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A novel P-I-D digital control FPGA for a switching power supply in HVDC system

机译:用于HVDC系统中开关电源的新型P-I-D数字控制FPGA

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This paper presents a novel digital P-I-D control FPGA for a switching power supply in the higher voltage direct-current (HVDC) power feeding system. At first, digital fast P control buck type converter is presented. Then, the appropriate number of sample point is determined. Then the fast P control is applied to the full bridge converter for HVDC. The acceptable delay time, with realizing superior dynamic response, is half of a switching cycle based on the appropriate number of sample points of buck converter. In the proposed method, the calculation processes of P and I-D controls are parallel. The delay time of P control is less than that of I-D control. The step change against the load will be discussed. It is revealed that the proposed circuit has the superior transient response. Then the proposed digitally controlled phase-shift full bridge dc-dc converter is verified with 800W proto type. The maximum power efficiency is about 92%. Then it is confirmed that proposed digital controlled phase-shift full bridge dc-dc converter achieves superior transient response compared to conventional one.
机译:本文提出了一种新颖的数字P-I-D控制FPGA,用于高压直流(HVDC)供电系统中的开关电源。首先,介绍了数字快速P控制降压型转换器。然后,确定适当数量的采样点。然后,将快速P控制应用于HVDC的全桥转换器。基于合适的降压转换器采样点数量,可接受的延迟时间(具有出色的动态响应)是开关周期的一半。在提出的方法中,P和I-D控制的计算过程是并行的。 P控制的延迟时间小于I-D控制的延迟时间。将讨论针对负载的阶跃变化。揭示了所提出的电路具有优异的瞬态响应。然后用800W原型验证了所提出的数控相移全桥DC-DC转换器。最大功率效率约为92%。然后可以确定,与传统的数字控制相移全桥DC-DC转换器相比,该转换器具有出色的瞬态响应。

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